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Published on: September 10, 2021
Infectious Entry Pathway of Enterovirus B Species
Varpu Marjomäki1, Paula Turkki2, Moona Huttunen3
1Nanoscience Center, Department of Biological and Environmental Science, University of Jyväskylä, Jyväskylä 40014, Finland. varpu.s.marjomaki@jyu.fi.
Abstract:
Enterovirus B species (EV-B) are responsible for a vast number of mild and serious acute infections. They are also suspected of remaining in the body, where they cause persistent infections contributing to chronic diseases such as type I diabetes. Recent studies of the infectious entry pathway of these viruses revealed remarkable similarities, including non-clathrin entry of large endosomes originating from the plasma membrane invaginations. Many cellular factors regulating the efficient entry have recently been associated with macropinocytic uptake, such as Rac1, serine/threonine p21-activated kinase (Pak1), actin, Na/H exchanger, phospholipace C (PLC) and protein kinase Cα (PKCα). Another characteristic feature is the entry of these viruses to neutral endosomes, independence of endosomal acidification and low association with acidic lysosomes. The biogenesis of neutral multivesicular bodies is crucial for their infection, at least for echovirus 1 (E1) and coxsackievirus A9 (CVA9). These pathways are triggered by the virus binding to their receptors on the plasma membrane, and they are not efficiently recycled like other cellular pathways used by circulating receptors. Therefore, the best "markers" of these pathways may be the viruses and often their receptors. A deeper understanding of this pathway and associated endosomes is crucial in elucidating the mechanisms of enterovirus uncoating and genome release from the endosomes to start efficient replication.
Insights
Enterovirus B species (EV-B) utilize macropinocytosis for cellular entry, hijacking host cell mechanisms. Understanding this pathway is key to developing antivirals and treating chronic diseases linked to persistent enterovirus infections.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Enterovirus B species (EV-B) cause acute infections and are implicated in chronic diseases like type I diabetes.
- EV-B infections are suspected to persist in the body, contributing to long-term health issues.
Purpose of the Study:
- To elucidate the cellular entry pathway of Enterovirus B species.
- To identify cellular factors and endosomal dynamics involved in EV-B infection.
- To understand the mechanisms of enterovirus uncoating and genome release.
Main Methods:
- Investigated the non-clathrin entry pathway of EV-B into host cells.
- Associated cellular factors like Rac1, Pak1, actin, Na/H exchanger, PLC, and PKCα with macropinocytic uptake.
- Examined the role of neutral endosomes and multivesicular bodies in EV-B infection.
Main Results:
- EV-B enter cells via non-clathrin pathways involving large endosomes from plasma membrane invaginations.
- Macropinocytic uptake factors regulate efficient EV-B entry.
- Viral entry occurs into neutral endosomes, independent of acidification, with low lysosomal association.
- Neutral multivesicular body biogenesis is critical for echovirus 1 and coxsackievirus A9 infection.
Conclusions:
- Enterovirus B species hijack macropinocytosis for cellular entry.
- The pathway involves neutral endosomes and is regulated by specific cellular factors.
- Understanding these mechanisms is crucial for developing treatments for EV-B-associated diseases.
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